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110 in 1938 an interesting natural cancer treatment was proposed as a simple, effective answer to cancer – almost any cancer. This treatment approach is not well known because it is considered alternative or experimental - or even dangerous - by the medical and scientific community and hence has been referenced primarily in obscure publications outside the mainstream press. This treatment approach is called alkaline therapy or pH therapy, and is based in part on observations of cultures without significant incidence of cancer and in part on scientific observations of and experimentation with cellular metabolism. The principles of pH therapy are very simple.

The metabolism of cancer cells has a very narrow pH tolerance for cellular proliferation (mitosis), which is between 6.5 and 7.5. As such, if you can interfere with cancer cell metabolism by either lowering or raising the internal cancer cell pH, you can theoretically stop cancer progression. While lowering cancer cell pH (increasing acidity) is effective against cancer cell mitosis in the lab, increasing acid levels in the live body of a cancer patient puts stress on normal cells and causes a lot of pain. So the proposed alkaline therapy for people is a "high pH therapy" and has been developed to normalize the intracellular pH of the cancer patient's body through elimination of latent acidosis, while increasing the pH of cancer cells to a range above 7.5. According to published research, it is at that pH they revert to a normal cellular apoptosis cycle (programed cell death). Ideally, this approach begins with an alkaline diet. There is general agreement amongst natural healers and medical professionals alike, that changing a cancer patient's diet is extremely helpful when someone is confronted with a cancer diagnosis. In a previous article, I outlined the six steps that every cancer patient should take to provide the best chance to heal from and prevent future recurrences of cancer using alkaline diet principles.

126 Some basic concepts about the chemistry of water - explained in very simple terms - and is intended for curious minds who wish to better understand the science behind water ionization at the molecular level. The structure of atoms and molecules. An atom consists of positively charged protons, electrically neutral neutrons and negatively charged electrons. At the centre of the atom, neutrons and protons stay together to form the atom's core or nucleus. Electrons revolve around the atom's core in three-dimensional orbits or shells. Each of these molecular orbits needs a certain number of electrons to be stable. The inner orbit closest to the core must contain 2 electrons to be stable. The second orbit must contain 8 electrons to be stable. Each subsequent orbit, for atoms that contain more than 10 protons and electrons, also requires a pre-defined number of electrons to be stable. But apart from inert gases such as helium, neon and argon, the outermost orbit of most atoms is missing one or more electrons to be stable. In order to reach a state of stability, atoms bond together to form molecules by sharing their valence electrons, or electrons that make up the outermost shell.

sharing can be achieved through covalent bonding as described below. Covalent bonding of a water molecule Covalent bonding is a form of chemical bonding between two non-metallic atoms, such as hydrogen and oxygen, which is characterized by the sharing of pairs of electrons between two or more atoms. For stabilization, they share their valence electrons with other atoms. A water molecule is an example of a molecule created through covalent bonding. Water is made up of one oxygen atom and 2 hydrogen atoms, hence the chemical symbol H2O. A hydrogen atom is made up of 1 proton at its core and 1 electron that revolves around the core in a three-dimensional orbit. An oxygen atom is made up of 8 protons and 8 neutrons at its core and 8 electrons that revolve around the core in 2 separate three-dimensional orbits. The inner orbit contains 2 electrons whereas the outer orbit contains 6 electrons. However, both the hydrogen atom and the oxygen atom are not stable when they are alone. In order to be stable, the hydrogen atom must contain 2 electrons in its shell, and the oxygen atom must contain 8 electrons in its outer shell.

Bolero
Bolero originated in Spain in the late 18th century and is danced by either a soloist or a couple. It is in a moderately slow tempo and is performed to music which is sung and accompanied by castanets and guitars. It is in triple time and usually has a triplet on the second beat of each bar. A number of classical composers have written works based on this dance: Frederic Chopin wrote a bolero for solo piano, and Maurice Ravel's Bolero is one of his most famous works, originally written as a ballet score but now usually played as a concert piece.